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用于分析土卫六大气中气溶胶和气体的气相色谱仪器。

Gas chromatographic instrumentation for the analysis of aerosols and gases in Titan's atmosphere.

作者信息

Scattergood T W, Valentin J R, O'Hara B J, Kojiro D R, Carle C G

机构信息

Department of Earth and Space Sciences, State University of New York at Stony Brook, USA.

出版信息

J Geophys Res. 1987 Mar 30;92(B4):E723-8. doi: 10.1029/jb092ib04p0e723.

Abstract

During the next decade or so, NASA, in conjunction with the European Space Agency, plans to send a spacecraft to the Saturnian system so that local studies of Saturn and its satellite, Titan, can be made. In order to study the atmosphere of Titan, analysis of both aerosols and gases will have to be made. To accomplish this, gas chromatographic instrumentation for the collection and analysis of organic gases and aerosols in Titan's atmosphere is being developed. The aerosols will be collected and then subjected to pyrolysis-gas chromatography. Results using a simple pyrolysis-GC system and tholin, made by subjecting a nominal Titan mixture (96.8% N2, 3% CH4, 0.2% H2) to laser-supported shocks, show that many compounds, including hydrocarbons and simple nitriles, can be identified by this technique. Atmospheric gases will be collected using large volume (>10 cm3) sample loops and then analyzed by gas chromatography. Large volume samples are required because the ambient pressures, where the probe instruments are first deployed, will be low (<10 mbar). Preliminary studies using a 20 cm3 sampling system and a very sensitive meta-stable ionization detector show that hydrocarbon components at the 10 ppb level can be detected. Work will continue to improve GC sensitivity, minimize analysis time, and develop interfaces with suitable sample collectors for analysis of atmospheres by future spacecraft.

摘要

在接下来的十年左右时间里,美国国家航空航天局(NASA)将与欧洲航天局合作,计划发射一艘航天器前往土星系统,以便对土星及其卫星土卫六进行实地研究。为了研究土卫六的大气层,必须对气溶胶和气体进行分析。为此,正在开发用于收集和分析土卫六大气中有机气体和气溶胶的气相色谱仪器。气溶胶将被收集起来,然后进行热解气相色谱分析。使用简单的热解气相色谱系统和通过对模拟土卫六混合物(96.8% N₂、3% CH₄、0.2% H₂)施加激光支持的冲击而制备的索林进行的实验结果表明,通过这种技术可以识别许多化合物,包括碳氢化合物和简单腈类。大气气体将使用大容量(>10 cm³)采样环进行收集,然后通过气相色谱进行分析。需要大容量样本是因为探测器仪器首次部署时的环境压力较低(<10毫巴)。使用20 cm³采样系统和非常灵敏的亚稳电离检测器进行的初步研究表明,可以检测到10 ppb水平的碳氢化合物成分。工作将继续进行,以提高气相色谱的灵敏度,尽量缩短分析时间,并开发与合适的样本收集器的接口,以便未来航天器对大气进行分析。

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